论文标题

Moiré声子和电子对称性破坏扭曲的三层石墨烯的影响

Moiré phonons and impact of electronic symmetry breaking in twisted trilayer graphene

论文作者

Samajdar, Rhine, Teng, Yanting, Scheurer, Mathias S.

论文摘要

由于其可调性,强大的超导性和复杂的电子对称性破坏,Twisted Trilayer石墨烯是一个特别有希望的Moiré超级晶格系统。在这些属性的驱动下,我们研究了该系统的晶格松弛和长波长的声子模式。我们表明,除了传统的声音声子模式外,镜像对称三层石墨烯宿主是两类的剪切模式,它们在镜面反射下均匀且奇怪。发现镜面模式是无间隙的,等同于具有适当重新缩放参数的扭曲双层石墨烯的“ phason”模式。镜子对称性下方的奇数模式在扭曲的双层石墨烯中没有类似物,并且表现出有限的间隙,我们显示的与晶格松弛程度成正比。我们还讨论了镜像断裂的影响,这可以通过位移场来调节,也可以是由堆叠偏移以及旋转和时间反转对称性破坏而导致的,这是由自发电子秩序引起的。我们证明,这可以诱导有限的角动量对声子分支。我们的发现对于最近实验的解释很重要,即超导性的起源和线性电阻率。

Twisted trilayer graphene is a particularly promising moiré superlattice system, due to its tunability, strong superconductivity, and complex electronic symmetry breaking. Motivated by these properties, we study lattice relaxation and the long-wavelength phonon modes of this system. We show that mirror-symmetric trilayer graphene hosts, aside from the conventional acoustic phonon modes, two classes of shear modes, which are even and odd under mirror reflection. The mirror-even modes are found to be gapless and equivalent to the "phason" modes of twisted bilayer graphene, with appropriately rescaled parameters. The modes odd under mirror symmetry have no analogue in twisted bilayer graphene and exhibit a finite gap, which we show is directly proportional to the degree of lattice relaxation. We also discuss the impact of mirror-symmetry breaking, which can be tuned by a displacement field or result from a stacking shift, and of rotational- as well as time-reversal-symmetry breaking, resulting from spontaneous electronic order. We demonstrate that this can induce finite angular momentum to the phonon branches. Our findings are important to the interpretation of recent experiments, concerning the origin of superconductivity and of linear-in-$T$ resistivity.

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